Manual copper brazing nozzle device adopting natural gas
By introducing cooling components into the copper brazed water-cooled plate test device, the air flow rate is accelerated by using wind members to accelerate the cooling of the air flow rate, the problem of high temperature removal of the water-cooled plate is solved and the working efficiency is improved.
Patent Information
- Application Number
- CN202422072148.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-26
AI Technical Summary
During the copper brazed water-cooled plate welding nozzle test, the high temperature on the surface of the water-cooled plate after the test takes a long time to remove it from the base, which affects the working efficiency.
The hand-copper brazing welding nozzle device using natural gas includes a tension tester, a testing platform, a crimp joint, a base and a cooling component. The driving member drives the moving member to move the wind member to the water-cooled plate detection part, generating wind force to accelerate the air flow rate and reduce the cooling.
It realizes rapid cooling after testing, simplifies the process of removing the water-cooled plate from the base, and improves the detection efficiency.
Smart Images

Figure CN223122703U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of new energy water cooling plates, in particular to a manual copper brazing nozzle device using natural gas. Background Art
[0002] Currently, during the nozzle test of copper brazing of natural gas, after completing the water nozzle strength test of one surface, the base needs to be replaced. During the test process, it is necessary to repeatedly disassemble and replace, which increases the test working time. The use of multiple fixing devices also increases the cost of the jig.
[0003] The prior art CN221056234U discloses a detection device for the welding strength of a multi-purpose water cooling plate water nozzle, including a tensile and compressive testing machine. The tensile and compressive testing machine is provided with a detection platform and a pressure joint that can move horizontally and vertically. The detection platform is provided with a base, and a fixing component for fixing the product is arranged above the base. The fixing component can be horizontally installed on the base. A clamping groove is arranged on the base, and the fixing component can be vertically installed in the clamping groove. When the fixing component is vertically placed, the pressure joint and the protrusion of the product are connected through a stretching bracket. One end of the stretching bracket is pivotally connected to the protrusion, and the other end of the stretching bracket is fixedly connected to the pressure joint through a pin. A pair of armrests are arranged on the base, and the armrests are distributed on both sides of the placement position of the fixing component, meeting the water nozzle welding strength test of the front and back sides of the water cooling plate. Only by adjusting the front and back sides of the water cooling plate and placing it in the clamping groove, there is no need to adjust the bottom installation device, greatly reducing the time for placing and taking in the test, saving time and effort. Adopting a design that is compatible in both the horizontal and vertical directions of the water cooling plate water nozzle, after testing in one direction, only by simply adjusting the direction of the fixing component, the tensile and pressure tests in the other direction of the water nozzle can be satisfied.
[0004] However, adopting the above method, during the nozzle test of the copper brazing water cooling plate, the surface of the water cooling plate has a high temperature after the test, resulting in a long time required to remove the water cooling plate from the base, affecting subsequent detection and reducing work efficiency. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a manual copper brazing nozzle device using natural gas, which can cool the water cooling plate after the nozzle test during the nozzle test of the copper brazing water cooling plate, so that it can be removed from the base relatively quickly, facilitating subsequent detection and improving work efficiency.
[0006] To achieve the above purpose, the utility model provides a manual copper brazing nozzle device using natural gas, including a tensile and compressive testing machine, a detection platform, a pressure joint and a base. The detection platform is arranged on the tensile and compressive testing machine, the pressure joint is arranged on the tensile and compressive testing machine, the base is fixedly connected to the detection platform and is located on one side of the detection platform, and a cooling component is further included;
[0007] The cooling component includes a mounting base, a moving member, a driving member, a wind member, and an auxiliary member. The mounting base is fixedly connected to the tensile and compressive testing machine and is located on one side of the tensile and compressive testing machine. The moving member is arranged on the mounting base, the driving member is arranged on the mounting base, the wind member is arranged on the mounting base, and the auxiliary member is arranged on the tensile and compressive testing machine.
[0008] Among them, the moving member includes a moving track and a moving slider. The moving track is fixedly connected to the mounting base and is located on one side of the mounting base; the moving slider is slidably connected to the moving track and is located on one side of the moving track.
[0009] Among them, the driving member includes a driving motor and a threaded rod. The driving motor is fixedly connected to the mounting base and is located on one side of the mounting base; the threaded rod is rotatably connected to the moving track, is threadedly connected to the moving slider, and the threaded rod is fixedly connected to the output shaft of the driving motor.
[0010] Among them, the wind member includes a blower and an air outlet plate. The blower is fixedly connected to the moving slider and is located on one side of the moving slider; the air outlet plate is fixedly connected to the blower and is located on the side of the blower close to the base.
[0011] Among them, the auxiliary member includes a mounting plate, a rectangular frame, and a storage box. The mounting plate is fixedly connected to the tensile and compressive testing machine and is located on one side of the tensile and compressive testing machine; the rectangular frame is fixedly connected to the mounting plate and is located on one side of the mounting plate; the storage box is detachably connected to the rectangular frame and is located on one side of the rectangular frame.
[0012] A hand-held copper brazing tip device using natural gas according to the present invention includes a tensile and compressive testing machine, a detection platform, a pressure joint, a base, and a cooling component. The cooling component includes a mounting base, a moving member, a driving member, a wind member, and an auxiliary member. During the process of testing the brazing tip of the copper brazing water-cooled plate, the driving member is started, and the driving member drives the moving member to move on the mounting base, so that the moving member drives the wind member to move on the mounting base until the wind member is moved above the detection part of the water-cooled plate. Then the wind member is started, and the wind member generates wind towards the direction of the base, thereby accelerating the air flow rate in the space where the water-cooled plate is located, so as to cool the water-cooled plate after testing, so that it can be quickly removed from the base, thereby facilitating subsequent detection and improving work efficiency. Description of the Drawings
[0013] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art.
[0014] Figure 1 It is a schematic diagram of the overall structure of the hand-held copper brazing torch device using natural gas in the first embodiment of the present utility model.
[0015] Figure 2 It is the overall front view of the hand-held copper brazing torch device using natural gas in the first embodiment of the present utility model.
[0016] Figure 3 It is a schematic diagram of the structure of the temperature reduction component in the first embodiment of the present utility model.
[0017] Figure 4 It is a schematic diagram of the overall structure of the hand-held copper brazing torch device using natural gas in the second embodiment of the present utility model.
[0018] In the figure: 101 - tensile and compressive testing machine, 102 - detection platform, 103 - pressure joint, 104 - base, 105 - mounting seat, 106 - moving track, 107 - moving slider, 108 - driving motor, 109 - threaded rod, 110 - blower, 111 - air outlet plate, 201 - mounting plate, 202 - rectangular frame, 203 - storage box. Specific Embodiments
[0019] The following will describe in detail the embodiments of the present utility model. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0020] The first embodiment of the present application is as follows:
[0021] Please refer to Figures 1 to 3 , in which Figure 1 is a schematic diagram of the overall structure of the hand-held copper brazing torch device using natural gas, Figure 2 is the overall front view of the hand-held copper brazing torch device using natural gas, Figure 3It is a schematic structural diagram of a cooling component. The present utility model provides a hand-held copper brazing tip device using natural gas, which includes a tensile and compressive testing machine 101, a detection platform 102, a pressure joint 103, a base 104, and a cooling component. The cooling component includes a mounting seat 105, a moving member, a driving member, a wind-force member, and an auxiliary member. The moving member includes a moving track 106 and a moving slider 107. The driving member includes a driving motor 108 and a threaded rod 109. The wind-force member includes a blower 110 and an air outlet plate 111. Through the foregoing solution, during the tip testing process of the copper brazing water-cooled plate, the surface of the water-cooled plate has a high temperature after testing, resulting in a long time required to remove the water-cooled plate from the base 104, affecting subsequent detection and reducing work efficiency. It can be understood that the foregoing solution can be used to cool the water-cooled plate after testing during the tip testing process of the copper brazing water-cooled plate, enabling it to be removed from the base 104 more quickly, thereby facilitating subsequent detection and improving work efficiency. It can also be used to cool different detection positions of the copper brazing water-cooled plate, with simple operation.
[0022] For this specific embodiment, the detection platform 102 is arranged on the tensile and compressive testing machine 101, the pressure joint 103 is arranged on the tensile and compressive testing machine 101, the base 104 is fixedly connected to the detection platform 102 and is located on one side of the detection platform 102. The tensile and compressive testing machine 101 is provided with the detection platform 102 and the pressure joint 103 that moves horizontally and vertically. The detection platform 102 is provided with the base 104. A fixing component for fixing the product is arranged above the base 104. The fixing component can be horizontally installed on the base 104. A card slot is arranged on the base 104, and the fixing component can be vertically installed in the card slot. When the fixing component is vertically placed, the pressure joint 103 is connected to the protrusion of the product through a stretching bracket. One end of the stretching bracket is pivotally connected to the protrusion, and the other end of the stretching bracket is fixedly connected to the pressure joint 103 through a pin. A pair of handrails are arranged on the base 104, and the handrails are distributed on both sides of the placement position of the fixing component, meeting the water nozzle welding strength test on both the front and back sides of the water-cooled plate. Only by adjusting the front and back sides of the water-cooled plate and placing it into the card slot, there is no need to adjust the bottom installation device, greatly reducing the time for placing and taking during the test, saving time and effort. Adopting a design that is compatible in both the horizontal and vertical directions of the water nozzle of the water-cooled plate, after testing in one direction, only by simply adjusting the direction of the fixing component, the tensile and pressure tests in the other direction of the water nozzle can be satisfied. The above are all prior arts.
[0023] Among them, the mounting base 105 is fixedly connected to the tensile and compressive testing machine 101 and is located on one side of the tensile and compressive testing machine 101. The moving member is arranged on the mounting base 105, the driving member is arranged on the mounting base 105, the wind force member is arranged on the mounting base 105, and the auxiliary member is arranged on the tensile and compressive testing machine 101. The mounting base 105 is welded to the tensile and compressive testing machine 101. The mounting base 105 is located at the upper front side of the pressure joint 103. The moving member is arranged on the mounting base 105. When the moving member is started, it can move horizontally on the mounting base 105. The driving member is arranged on the mounting base 105 and is connected to the moving member, so that when the driving member is started, it can drive the moving member to move horizontally on the mounting base 105. The wind force member is arranged on the mounting base 105. When the wind force member is started, it can generate wind force in the direction of the base 104, thereby accelerating the air flow rate in the space where the product placed on the base 104 is located and playing a role in cooling the product. The wind force member is connected to the moving member, so that when the moving member moves on the mounting base 105, it can drive the wind force member to move along the direction of the mounting base 105, so that the wind force member can generate wind force on different parts of the product on the base 104 and then cool it. The auxiliary member is arranged at the front bottom of the tensile and compressive testing machine 101. The setting of the auxiliary member enables the copper brazing water-cooled plate to be taken off the bottom plate and placed in the auxiliary member for collection after being detected and cooled, and the operation is simple. During the welding tip test of the copper brazing water-cooled plate, the driving member is started, and the driving member drives the moving member to move on the mounting base 105, so that the moving member drives the wind force member to move on the mounting base 105 until the wind force member is moved above the detection part of the water-cooled plate. Then the wind force member is started, and the wind force member generates wind force in the direction of the base 104, thereby accelerating the air flow rate in the space where the water-cooled plate is located, cooling the water-cooled plate after the test, enabling it to be taken off the base 104 more quickly, and thus facilitating subsequent detection and improving work efficiency.
[0024] Secondly, the moving track 106 is fixedly connected to the mounting base 105 and is located on one side of the mounting base 105; the moving slider 107 is slidably connected to the moving track 106 and is located on one side of the moving track 106. The moving track 106 is arranged on the front side of the mounting base 105. The moving track 106 forms a rectangular opening on the front side of the mounting base 105. The length of the moving track 106 is less than the length of the mounting base 105. The moving slider 107 is located within the moving track 106. The cross-sectional dimension of the moving slider 107 is adapted to the cross-sectional dimension of the moving track 106, so that the moving slider 107 can move along the direction of the moving track 106 within the moving track 106. The moving slider 107 is connected to the wind power component, so that when the moving slider 107 moves within the moving track 106, it can drive the wind power component to move on the mounting base 105, so that the wind power component can move to the position where the water-cooled plate needs to be cooled. The moving slider 107 is driven by the driving component, so that the wind power component can be automatically driven to the required position.
[0025] Meanwhile, the driving motor 108 is fixedly connected to the mounting base 105 and is located on one side of the mounting base 105; the threaded rod 109 is rotatably connected to the moving track 106, is threadedly connected to the moving slider 107, and the threaded rod 109 is fixedly connected to the output shaft of the driving motor 108. The driving motor 108 is fixed to the right side of the mounting base 105 by bolts. The output shaft of the driving motor 108 penetrates through the mounting base 105 into the moving track 106. The threaded rod 109 is located within the moving track 106. The left end of the threaded rod 109 is welded to the left end of the moving track 106. The right end of the threaded rod 109 is fixedly connected to the output shaft of the driving motor 108, and the moving slider 107 is penetrated by the threaded rod 109. The outer surface of the threaded rod 109 has an external thread, and the penetrated part of the moving slider 107 has an internal thread adapted to the external thread. When the driving motor 108 is started, the driving motor 108 drives the threaded rod 109 to rotate within the moving track 106, so that the moving slider 107 moves along the direction of the moving track 106 within the moving track 106 under the screw drive of the rotating threaded rod 109, so that the moving slider 107 drives the wind power component to move on the mounting base 105 until the wind power component moves to the required position.
[0026] In addition, the blower 110 is fixedly connected to the moving slider 107 and is located on one side of the moving slider 107; the air outlet plate 111 is fixedly connected to the blower 110 and is located on the side of the blower 110 close to the base 104. The blower 110 is fixed to the moving slider 107 by bolts, and the blower 110 is connected to the device terminal power supply through a power wire, so that when the device is started, electrical energy can also be provided for the blower 110. The air outlet of the blower 110 is provided with the air outlet plate 111, and the air outlet plate 111 faces the side of the base 104. When the blower 110 is started, wind can be generated in the direction of the base 104 through the air outlet plate 111, thereby accelerating the air flow rate in the space where the water-cooled plate is located on the base 104, enabling the water-cooled plate to be quickly cooled after being detected, and then being able to be quickly removed from the base 104, facilitating subsequent detection and improving efficiency.
[0027] When using the hand-held copper brazing torch device using natural gas in this embodiment during the torch test of the copper brazing water-cooled plate, start the drive motor 108. The drive motor 108 drives the threaded rod 109 to rotate in the moving track 106, so that the moving slider 107 moves in the moving track 106 along the direction of the moving track 106 under the screw drive of the rotating threaded rod 109, thereby enabling the moving slider 107 to drive the blower 110 to move on the mounting seat 105 until the blower 110 is moved above the detection position of the water-cooled plate. Start the blower 110, and the blower 110 generates wind in the direction of the base 104 through the air outlet plate 111, thereby accelerating the air flow rate in the space where the water-cooled plate is located on the base 104, enabling the water-cooled plate after testing to be cooled, and enabling it to be quickly removed from the base 104, thus facilitating subsequent detection and improving work efficiency.
[0028] The second embodiment of the present application is as follows:
[0029] On the basis of the first embodiment, please refer to Figure 4 , Figure 4 which is a schematic diagram of the overall structure of the hand-held copper brazing torch device using natural gas in the second embodiment. The auxiliary components in this embodiment include a mounting plate 201, a rectangular frame 202, and a storage box 203.
[0030] For this specific embodiment, the mounting plate 201 is fixedly connected to the tensile and compressive testing machine 101 and is located on one side of the tensile and compressive testing machine 101; the rectangular frame 202 is fixedly connected to the mounting plate 201 and is located on one side of the mounting plate 201; the storage box 203 is detachably connected to the rectangular frame 202 and is located on one side of the rectangular frame 202. The mounting plate 201 is welded to the front side of the tensile and compressive testing machine 101. The lower surface of the mounting plate 201 is in the same plane as the lower surface of the tensile and compressive testing machine 101. The rectangular frame 202 is welded to the upper surface of the mounting plate 201. The rectangular frame 202 is of a frame structure. The internal cross-sectional dimension of the rectangular frame 202 is adapted to the cross-sectional dimension of the storage box 203, so that the storage box 203 can be placed inside the rectangular frame 202. At this time, the lower surface of the storage box 203 abuts against the upper surface of the mounting plate 201, and the bottom end of the outer surface of the storage box 203 abuts against the inner surface of the rectangular frame 202, so that the storage box 203 maintains a stable state on the mounting plate 201. The storage box 203 is of a box structure with an open top. The setting of the storage box 203 enables the copper brazed water-cooled plate to be placed inside the storage box 203 for collection after being detected and cooled, which is simple to operate and improves work efficiency.
[0031] When using the hand-held copper brazing torch device using natural gas according to this embodiment, the storage box 203 is placed inside the rectangular frame 202. At this time, the lower surface of the storage box 203 abuts against the upper surface of the mounting plate 201, and the bottom end of the outer surface of the storage box 203 abuts against the inner surface of the rectangular frame 202, so that the storage box 203 maintains a stable state on the mounting plate 201. After the copper brazed water-cooled plate is detected and cooled, it can be placed inside the storage box 203 for collection, which is simple to operate and improves work efficiency.
[0032] What is disclosed above is only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand the entire or partial processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A manual copper brazing tip device using natural gas, comprising a tensile and compressive testing machine, a detection platform, a pressure joint, and a base. The detection platform is arranged on the tensile and compressive testing machine, the pressure joint is arranged on the tensile and compressive testing machine, the base is fixedly connected to the detection platform and is located on one side of the detection platform. It is characterized in that, it further comprises a cooling component; The cooling component includes a mounting seat, a moving member, a driving member, a wind force member, and an auxiliary member. The mounting seat is fixedly connected to the tensile and compressive testing machine and is located on one side of the tensile and compressive testing machine. The moving member is arranged on the mounting seat, the driving member is arranged on the mounting seat, the wind force member is arranged on the mounting seat, and the auxiliary member is arranged on the tensile and compressive testing machine.
2. The manual copper brazing tip device using natural gas according to claim 1, characterized in that, The moving member includes a moving track and a moving slider. The moving track is fixedly connected to the mounting seat and is located on one side of the mounting seat; the moving slider is slidably connected to the moving track and is located on one side of the moving track.
3. The manual copper brazing tip device using natural gas according to claim 2, characterized in that, The driving member includes a driving motor and a threaded rod. The driving motor is fixedly connected to the mounting seat and is located on one side of the mounting seat; the threaded rod is rotatably connected to the moving track, is threadedly connected to the moving slider, and is fixedly connected to the output shaft of the driving motor.
4. The manual copper brazing tip device using natural gas according to claim 3, characterized in that, The wind force member includes a blower and an air outlet plate. The blower is fixedly connected to the moving slider and is located on one side of the moving slider; the air outlet plate is fixedly connected to the blower and is located on the side of the blower close to the base.
5. The manual copper brazing tip device using natural gas according to claim 1, characterized in that, The auxiliary member includes a mounting plate, a rectangular frame, and a storage box. The mounting plate is fixedly connected to the tensile and compressive testing machine and is located on one side of the tensile and compressive testing machine; the rectangular frame is fixedly connected to the mounting plate and is located on one side of the mounting plate; the storage box is detachably connected to the rectangular frame and is located on one side of the rectangular frame.
Citation Information
Patent Citations
A multi-purpose water cooling plate nozzle welding strength detection device
CN221056234U